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자료유형
학술저널
저자정보
권유리 (충남대학교) 장윤 (충남대학교) 장용철 (충남대학교)
저널정보
한국폐기물자원순환학회 한국폐기물자원순환학회지 한국폐기물자원순환학회지 제35권 제6호
발행연도
2018.1
수록면
525 - 532 (8page)

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This study examined the potentials for greenhouse gas reduction by material recovery and energy recovery frommunicipal solid waste between 2017 and 2026 in Daejeon Metropolitan City (DMC), which is trying to establish amaterial-cycle society by constructing a waste-to-energy town by 2018. The town consists of energy recovery facilitiessuch as a mechanical treatment facility for fluff-type solid refuse fuel (SRF) with a power generation plant and anaerobicdigestion of food waste for biogas recovery. Such recycling and waste-to-energy facilities will not only reduce GHGs,but will also substitute raw materials for energy consumption. The emissions and reduction rate of GHGs from MSWmanagement options were calculated by the IPCC guideline and EU Prognos method. This study found that in DMC,the decrease of the amount of MSW landfilled and the increase of recycling and waste-to-energy flow reduced GHGsemissions from 167,332 tonCO2 eq/yr in 2017 to 123,123 tonCO2 eq/yr in 2026. Material recycling had the highest rateof GHG reduction (-228,561 tonCO2 eq/yr in 2026), followed by the solid refuse fuels (-29,146 tonCO2 eq/yr in 2026)and biogas treatment of food waste (-3,421 tonCO2 eq/yr in 2026). This study also shows that net GHG emission wasfound to be -30,505 tonCO2 eq in 2017 and -105,428 tonCO2 eq, indicating a great and positive impact on future CO2emission. Improved MSW management with increased recycling and energy recovery of material waste streams canpositively contribute to GHGs reduction and energy savings. The results of this study would help waste managementdecision-makers clarify the effectiveness of recycling MSW, and their corresponding energy recovery potentials, as wellas to understand GHG reduction by the conversion.

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